Breast cancer remains one of the most prevalent and life-threatening forms of cancer, impacting millions worldwide. This malignancy's heterogeneity and complexity have long posed significant ...
Single-cell omics is a transformative area within life sciences, enabling researchers to untangle cellular heterogeneity, uncover developmental lineages, ...
Three-dimensional transcriptomics data from an instrument launched at the Advances in Genome Biology and Technology conference. The translucent shapes represent cells, and each dot within a cell ...
The origin of many diseases begins at the cellular level and involves multiple molecular interactions. However, previous methods have struggled to accurately observe changes in individual cells.
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BCAT2 enzyme identified as a target for diabetic foot recovery
Diabetic macrovascular complications are the main cause of death and disability in diabetes patients, of which vascular calcification is one of the key pathological mechanisms. Calcification in ...
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Water-window X-rays without a synchrotron: How graphite flakes could shrink bioimaging tools
Researchers from Nanyang Technological University, Singapore (NTU Singapore) have found a new way to produce X-rays with wavelengths in what is called the "water window." This new method holds promise ...
More than 200 metabolic enzymes, many of which are normally tasked with producing energy in the mitochondria, are also found ...
By combining high-resolution genomic data with AI, researchers are uncovering the regulatory logic plants use to sense and survive environmental stress.
From analytical control through downstream processes to manufacturing, BsAbs present challenges in protein expression, purity, and stability.
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